Numerical Simulation on Dynamic Behavior of Slab–Column Connections Subjected to Blast Loads SCIE SCOPUS

DC Field Value Language
dc.contributor.author Lim, Kwang Mo -
dc.contributor.author Han, Taek Hee -
dc.contributor.author Lee, Joo Ha -
dc.date.accessioned 2021-08-19T06:30:00Z -
dc.date.available 2021-08-19T06:30:00Z -
dc.date.created 2021-08-19 -
dc.date.issued 2021-08 -
dc.identifier.issn 2076-3417 -
dc.identifier.uri https://sciwatch.kiost.ac.kr/handle/2020.kiost/41584 -
dc.description.abstract <jats:p>Although many studies on the blast-resistant performance of structures have focused mainly on single members such as beams and columns, there is little research on the behavior of joints that are subjected to blast loads. In this study, the structural behavior of a slab–column connection subjected to blast load was investigated using a numerical analysis method. LS-DYNA was used as a finite element analysis program, and in order to improve the accuracy of numerical analysis, mesh size, material model, and simulation method of blast load were determined through preliminary analysis. The effect of different restraints of the joints, depending on the position of the columns in the slab, on the blast resistance performance was investigated. As a result, the highly confined slab-interior column connection showed better behavior than other edge and corner columns. The drop panel installed between the lower column and the slab was effective in improving the blast-resistance performance of the slab–column connection. For a more accurate evaluation of blast resistance performance, it was suggested that various evaluation factors such as ductility ratio, reinforcing stress, and concrete fracture area can be considered along with the support rotation, which is an important evaluation factor suggested by many standards.</jats:p> -
dc.description.uri 1 -
dc.language English -
dc.publisher MDPI -
dc.subject HIGH-STRENGTH CONCRETE -
dc.subject PROGRESSIVE COLLAPSE -
dc.subject RC SLABS -
dc.subject PERFORMANCE -
dc.subject RESISTANCE -
dc.subject TESTS -
dc.subject REINFORCEMENT -
dc.subject BENEFITS -
dc.subject GRAVITY -
dc.subject FIBERS -
dc.title Numerical Simulation on Dynamic Behavior of Slab–Column Connections Subjected to Blast Loads -
dc.type Article -
dc.citation.title APPLIED SCIENCES-BASEL -
dc.citation.volume 11 -
dc.citation.number 16 -
dc.contributor.alternativeName 한택희 -
dc.identifier.bibliographicCitation APPLIED SCIENCES-BASEL, v.11, no.16 -
dc.identifier.doi 10.3390/app11167573 -
dc.identifier.scopusid 2-s2.0-85113492701 -
dc.identifier.wosid 000688623400001 -
dc.type.docType Article -
dc.description.journalClass 1 -
dc.description.isOpenAccess N -
dc.subject.keywordPlus HIGH-STRENGTH CONCRETE -
dc.subject.keywordPlus PROGRESSIVE COLLAPSE -
dc.subject.keywordPlus RC SLABS -
dc.subject.keywordPlus PERFORMANCE -
dc.subject.keywordPlus RESISTANCE -
dc.subject.keywordPlus TESTS -
dc.subject.keywordPlus REINFORCEMENT -
dc.subject.keywordPlus BENEFITS -
dc.subject.keywordPlus GRAVITY -
dc.subject.keywordPlus FIBERS -
dc.subject.keywordAuthor blast loads -
dc.subject.keywordAuthor slab -
dc.subject.keywordAuthor column -
dc.subject.keywordAuthor connections -
dc.subject.keywordAuthor numerical analysis -
dc.relation.journalWebOfScienceCategory Chemistry, Multidisciplinary -
dc.relation.journalWebOfScienceCategory Engineering, Multidisciplinary -
dc.relation.journalWebOfScienceCategory Materials Science, Multidisciplinary -
dc.relation.journalWebOfScienceCategory Physics, Applied -
dc.description.journalRegisteredClass scie -
dc.description.journalRegisteredClass scopus -
dc.relation.journalResearchArea Chemistry -
dc.relation.journalResearchArea Engineering -
dc.relation.journalResearchArea Materials Science -
dc.relation.journalResearchArea Physics -
Appears in Collections:
Marine Industry Research Division > Ocean Space Development & Energy Research Department > 1. Journal Articles
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